无源超宽带rfid的设计与演示:无芯片与芯片解决方案

Z. Zou, Botao Shao, Qin Zhou, C. Zhai, J. Mao, M. Nejad, Qiang Chen, Lirong Zheng
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引用次数: 17

摘要

本文综述了瑞典KTH的Vinn iPack中心对面向物联网(IoT)的下一代射频识别(RFID)的超宽带(UWB)技术的最新研究。首先,我们介绍了一种用于超低成本应用(如物品级跟踪)的喷墨打印无芯片超宽带RFID。通过传输线上阻抗的变化对识别号进行编码,从而使OOK通过脉冲反射在时域内调制数据。分别制作了4位标签和8位标签的原型并进行了测量。由于采用了全印刷工艺和纸质基材,该标签在批量生产中具有潜在的超低成本。其次,研究了一种带有有源超宽带发射机的无线供电RFID标签,用于无线定位和传感等高级应用。标签由UHF连续波供电,而它使用UWB脉冲发生器将数据传输到读取器。与传统的后向散射UHF标签相比,它确保了更好的覆盖范围和准确的定位。超宽带阅读器,定位和传感也在系统的角度进行了讨论。这两种解决方案表明,超宽带是现有无源rfid的可行替代方案,既适用于低成本应用,也适用于高性能传感和定位应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and demonstration of passive UWB RFIDs: Chipless versus chip solutions
This paper reviews recent research on Ultra-Wideband (UWB) techniques for the next generation Radio Frequency IDentification (RFID) towards the Internet-of-Things (IoT), conducted by Vinn iPack Center at KTH, Sweden. First, we introduce an inkjet printed chipless UWB RFID for ultra-low cost applications such as item-level tracking. The identification number is coded by variations of the impedance over the transmission line, resulting in the OOK modulated data by means of pulse reflections in time domain. Prototypes were fabricated and measured for 4-bit tag and 8-bit tag, respectively. Thanks to the employment of fully printing process and paper substrates, the tag is potentially ultra-low cost in volume production. Second, a wirelessly powered RFID tag with an active UWB transmitter is studied for advanced applications such as wireless positioning and sensing. The tag is powered by UHF continuous waves, whereas it uses an UWB pulse generator to transmit data to the reader. It ensures the improved coverage and accurate positioning over traditional backscattering UHF tags. UWB readers, positioning, and sensing are also discussed in a system perspective. The two solutions reveal that UWB is a viable alternative to existing passive RFIDs adapting both low-cost applications and high-performance sensing and positioning applications.
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